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Design and development of a polymer patch clamping device

机译:聚合物膜片夹持装置的设计与开发

摘要

Patch clamping is considered the gold standard in measuring the bioelectrical activity of a cell. It is used to detect and measure ion transport through ion channels located throughout a cell membrane. Ion movement is crucial to cell viability and cell-to-cell communication. Pharmaceutical companies increasingly target ion channels because of their significance in disease and to help design better targeted drugs. However, the traditional method of patch clamping is cumbersome and is being replaced by planar high throughput screening (HTS) systems. These systems are reaching their limits due to materials and cost of processing; cell handling methods and small varieties of applicable cell types are also issues to be addressed.In this work, the core components of a new kind of planar patch clamping device have been designed and developed, after analysis of currently available HTS systems. This design approaches patch clamping using polymers to overcome some of the limitations in current systems, specifically cell handling and positioning, by using a simple modification technique to provide distinct attractive areas for cell binding. This uniquely allows the culture of both single cells and cell networks to increase the range of cell types that can be measured and circumvents challenges from using suction to pull cells onto measurement holes. The components of the design are a 10 x 10 array of small holes drilled in a polymer then aligned modifications for precise cell placement are added and a planar electrode array for individual addressing of each cell. A study of methods to produce a leak-tight seal required between microfluidic chambers was done. Cell adhesion parameters for the modification techniques were established. The principle viability of this approach was confirmed using the modification technique to culture cells over holes and measure their resistance using a rig developed for this work.
机译:膜片钳被认为是测量细胞生物电活性的金标准。它用于检测和测量通过整个细胞膜上离子通道的离子传输。离子运动对于细胞活力和细胞间通讯至关重要。由于离子通道在疾病中的重要性,它们越来越多地将离子通道作为目标,并帮助设计更好的靶向药物。但是,传统的膜片夹持方法麻烦,并且已被平面高通量筛选(HTS)系统取代。由于材料和加工成本,这些系统正达到极限。细胞处理方法和适用细胞类型的小品种也是要解决的问题。在这项工作中,在分析了当前可用的HTS系统之后,已经设计和开发了一种新型的平面贴片夹持装置的核心组件。该设计通过使用简单的修饰技术为细胞结合提供独特的吸引区域,从而使用聚合物来解决膜片钳制问题,从而克服了当前系统中的某些局限性,特别是细胞处理和定位。这独特地允许单细胞和细胞网络的培养,以增加可以测量的细胞类型的范围,并规避了使用吸力将细胞拉至测量孔的挑战。设计的组成部分是在聚合物中钻出的10 x 10小孔阵列,然后添加了用于精确放置电池的对齐修改,以及用于分别寻址每个电池的平面电极阵列。对产生微流体腔之间所需的密封的方法进行了研究。建立了用于修饰技术的细胞粘附参数。使用改良技术在孔上培养细胞并使用为此工作开发的钻机测量其抗性,证实了该方法的原则可行性。

著录项

  • 作者

    Wilson Sandra;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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